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ABC Transporters and Azole Susceptibility in Laboratory Strains of the Wheat Pathogen Mycosphaerella graminicola

机译:小麦病原菌Mycosphaerella graminicola的实验室菌株中的ABC转运蛋白和Azole敏感性。

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摘要

Laboratory strains of Mycosphaerella graminicola with decreased susceptibilities to the azole antifungal agent cyproconazole showed a multidrug resistance phenotype by exhibiting cross-resistance to an unrelated chemical, cycloheximide or rhodamine 6G, or both. Decreased azole susceptibility was found to be associated with either decreased or increased levels of accumulation of cyproconazole. No specific relationship could be observed between azole susceptibility and the expression of ATP-binding cassette (ABC) transporter genes MgAtr1 to MgAtr5 and the sterol P450 14α-demethylase gene, CYP51. ABC transporter MgAtr1 was identified as a determinant in azole susceptibility since heterologous expression of the protein reduced the azole susceptibility of Saccharomyces cerevisiae and disruption of MgAtr1 in one specific M. graminicola laboratory strain with constitutive MgAtr1 overexpression restored the level of susceptibility to cyproconazole to wild-type levels. However, the level of accumulation in the mutant with an MgAtr1 disruption did not revert to the wild-type level. We propose that variations in azole susceptibility in laboratory strains of M. graminicola are mediated by multiple mechanisms.
机译:对唑类抗真菌药cyproconazole敏感性降低的实验室菌株Mycosphaerella graminicola通过对互不相关的化学药品,环己酰亚胺或若丹明6G或两者都有交叉耐药性,表现出多药耐药表型。发现吡咯敏感性降低与环丙康唑积累水平降低或增加有关。吡咯敏感性与ATP结合盒(ABC)转运蛋白MgAtr1至MgAtr5和固醇P45014α-脱甲基酶基因CYP51的表达之间未发现特异性关系。 ABC转运蛋白MgAtr1被确定为吡咯易感性的决定因素,因为该蛋白的异源表达降低了酿酒酵母的吡咯易感性,并且在一个特定的组成性MgAtr1过表达的特有的M. graminicola实验室菌株中破坏了MgAtr1,从而恢复了对环丙康唑的敏感性。类型级别。但是,具有MgAtr1破坏的突变体中的积累水平没有恢复到野生型水平。我们建议在实验室菌株的M. graminicola唑敏感性的变化是由多种机制介导的。

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